An upper limit to the velocity dispersion of relaxed stellar systems without massive black holes
arXiv:1206.6167 · doi:10.1088/0004-637X/755/1/81
Abstract
Massive black holes have been discovered in all closely examined galaxies with high velocity dispersion. The case is not as clear for lower-dispersion systems such as low-mass galaxies and globular clusters. Here we suggest that above a critical velocity dispersion of roughly 40 km/s, massive central black holes will form in relaxed stellar systems at any cosmic epoch. This is because above this dispersion primordial binaries cannot support the system against deep core collapse. If, as previous simulations show, the black holes formed in the cluster settle to produce a dense subcluster, then given the extremely high densities reached during core collapse the holes will merge with each other. For low velocity dispersions and hence low cluster escape speeds, mergers will typically kick out all or all but one of the holes due to three-body kicks or the asymmetric emission of gravitational radiation. If one hole remains, it will tidally disrupt stars at a high rate. If none remain, one is formed after runaway collisions between stars, then it tidally disrupts stars at a high rate. The accretion rate after disruption is many orders of magnitude above Eddington. If, as several studies suggest, the hole can accept matter at that rate because the generated radiation is trapped and advected, then it will grow quickly and form a massive central black hole.
8 pages, 2 figures, accepted to the Astrophysical Journal
References in corpus (9)
- Formation and Dynamical Evolution of Multiple Stellar Generations in Globular Clusters
- The evolution of runaway stellar collision products
- On the final spin from the coalescence of two black holes
- Black holes and core expansion in massive star clusters
- Modeling kicks from the merger of non-precessing black-hole binaries
- Further insight into gravitational recoil
- Modeling gravitational recoil from precessing highly-spinning unequal-mass black-hole binaries
- Intermediate Mass Black Hole Induced Quenching of Mass Segregation in Star Clusters
- Monte Carlo Simulations of Star Clusters - VI. The globular cluster NGC 6397
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- Intermediate-Mass Black Holes
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- On stellar-mass black hole mergers in AGN disks detectable with LIGO
- Co-Evolution of Galactic Nuclei and Globular Cluster Systems
- Co-evolution of nuclear star clusters, massive black holes and their host galaxies
- Low-mass black holes as the remnants of primordial black hole formation
- Initial mass function of intermediate mass black hole seeds
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- Retention of Stellar-Mass Black Holes in Globular Clusters
- X-ray Detected AGN in SDSS Dwarf Galaxies
- Formation channels of single and binary stellar-mass black holes
- A No-Go Theorem for Direct Collapse Black Holes Without a Strong Ultraviolet Background
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- Quiescent and active galactic nuclei as factories of merging compact objects in the era of gravitational-wave astronomy
- Indication for an intermediate-mass black hole in the globular cluster NGC 5286 from kinematics
- On black hole sub-systems in idealized nuclear star clusters
- Formation of super-massive black holes in galactic nuclei I: delivering seed intermediate-mass black holes in massive stellar clusters
- Hundreds of Low-Mass Active Galaxies in the Galaxy And Mass Assembly (GAMA) Survey
- Massive black hole assembly in nuclear star clusters
- Observational Support for Massive Black Hole Formation Driven by Runaway Stellar Collisions in Galactic Nuclei
- Formation of supermassive black holes in galactic nuclei II: retention and growth of seed intermediate-mass black holes
- AGN Activity in Nucleated Galaxies as Measured by Chandra
- Nuclear star cluster formation in energy-space
- MOCCA-SURVEY Database II -- Properties of Intermediate Mass Black Holes escaping from star clusters
- Illustrating chaos: A schematic discretization of the general three-body problem in Newtonian gravity
- Little Red Dots are Tidal Disruption Events in Runaway-Collapsing Clusters
- A Dynamical Potential-Density Pair for Star Clusters With Nearly Isothermal Interiors
- Demographics of Tidal Disruption Events with L-Galaxies: I. Volumetric TDE rates and the abundance of Nuclear Star Clusters
- Weighing the IMBH candidate CO-0.40-0.22* in the Galactic Centre
- Observational Signatures of Massive Black Hole Progenitor Pathways: Could Leo I a Smoking Gun?
- Study on the detectability of gravitational radiation from single-binary encounters between black holes in nuclear star cluster: the case of hyperbolic flybys
- The evolution of high-redshift massive black holes
- Astrophysics with the Laser Interferometer Space Antenna
- Growth of A Massive Black Hole Via Tidal Disruption Accretion
- Space-based Gravitational Wave Observatories
- Massive black hole formation in dense stellar environments: Enhanced X-ray detection rates in high velocity dispersion nuclear star clusters